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Performance evaluation of a PEM fuel cell stack with variable inlet flows under simulated driving cycle conditions

机译:在模拟驾驶循环条件下具有可变进气流量的PEM燃料电池堆的性能评估

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Alongside battery, polymer electrolyte membrane (PEM) fuel cell stack has been a promising candidate as a power source for hybrid and electric vehicles. On this application, the dynamic performance of the PEM fuel cell is crucial in ensuring smooth operation of the vehicle. The PEM fuel cell stack should be maintained at its optimum performance while being responsive during real road driving condition which is best represented by legislative driving cycle. The present study is conducted to evaluate the performance of a PEM fuel cell stack for vehicle application subjected to New European Driving Cycle (NEDC) by utilizing computational fluid dynamics (CFD) approach. The studied PEM fuel cell stack comprises 320 cells with 1600 cm(2) active catalyst area. The effect of variable inlet following NEDC profile on the PEM fuel cell performance is investigated as well. Several possible scenarios, i.e. steady inlet flows, variable inlet flows at anode, cathode, coolant and combinations of these, are examined and discussed in the light of numerical result. The results reveal that variable inlet flows have considerable effect on the total net power generated, thermal envelope and liquid saturation albeit its marginal effects on the stack performance in term of stack power.
机译:除电池外,聚合物电解质膜(PEM)燃料电池堆已成为有前途的候选者,可作为混合动力和电动汽车的动力源。在此应用中,PEM燃料电池的动态性能对于确保车辆的平稳运行至关重要。 PEM燃料电池堆应保持其最佳性能,同时在实际道路行驶条件下作出响应,这最好以立法行驶周期为代表。进行本研究以通过利用计算流体动力学(CFD)方法评估经受新欧洲行驶周期(NEDC)的车辆应用的PEM燃料电池堆的性能。所研究的PEM燃料电池堆包括320个具有1600 cm(2)活性催化剂面积的电池。还研究了NEDC曲线后可变进气口对PEM燃料电池性能的影响。根据数值结果,研究并讨论了几种可能的情况,即稳定的进气流量,阳极,阴极,冷却剂的可变进气流量以及它们的组合。结果表明,可变的入口流量对产生的总净功率,热包络线和液体饱和度有相当大的影响,尽管就堆功率而言,其对堆性能的影响很小。

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